JAK/STAT pathway inhibition overcomes IL7-induced glucocorticoid resistance in a subset of human T-cell acute lymphoblastic leukemias

Cristina Delgado-Martín(University of California, San Francisco), Lauren K. Meyer(University of California, San Francisco), Benjamin J. Huang(University of California, San Francisco), Kristin A. Shimano(University of California, San Francisco), Matt S. Zinter(University of California, San Francisco), Jonathan V. Nguyen(University of California, San Francisco), Geoffrey A. Smith(University of California, San Francisco), Jack Taunton(University of California, San Francisco), Stuart S. Winter(University of New Mexico), Justine R. Roderick(University of Massachusetts Chan Medical School), Michelle A. Kelliher(University of Massachusetts Chan Medical School), Terzah M. Horton(Texas Children's Hospital), Brent L. Wood(University of Washington), David T. Teachey(Children's Hospital of Philadelphia), Michelle L. Hermiston(University of California, San Francisco)
Leukemia
May 9, 2017
Cited by 132Open Access
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Abstract

While outcomes for children with T-cell acute lymphoblastic leukemia (T-ALL) have improved dramatically, survival rates for patients with relapsed/refractory disease remain dismal. Prior studies indicate that glucocorticoid (GC) resistance is more common than resistance to other chemotherapies at relapse. In addition, failure to clear peripheral blasts during a prednisone prophase correlates with an elevated risk of relapse in newly diagnosed patients. Here we show that intrinsic GC resistance is present at diagnosis in early thymic precursor (ETP) T-ALLs as well as in a subset of non-ETP T-ALLs. GC-resistant non-ETP T-ALLs are characterized by strong induction of JAK/STAT signaling in response to interleukin-7 (IL7) stimulation. Removing IL7 or inhibiting JAK/STAT signaling sensitizes these T-ALLs, and a subset of ETP T-ALLs, to GCs. The combination of the GC dexamethasone and the JAK1/2 inhibitor ruxolitinib altered the balance between pro- and anti-apoptotic factors in samples with IL7-dependent GC resistance, but not in samples with IL7-independent GC resistance. Together, these data suggest that the addition of ruxolitinib or other inhibitors of IL7 receptor/JAK/STAT signaling may enhance the efficacy of GCs in a biologically defined subset of T-ALL.


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